19 mm sized bileaflet valve prostheses' flow field investigated by bidimensional laser Doppler anemometry (part I: velocity profiles)

被引:21
作者
Barbaro, V [1 ]
Grigioni, M [1 ]
Daniele, C [1 ]
D'Avenio, G [1 ]
Boccanera, G [1 ]
机构
[1] Ist Super Sanita, Lab Ingn Biomed, I-00161 Rome, Italy
关键词
flow visualization; laser Doppler anemometry; aortic cardiac valve prosthesis; in vitro testing; velocity profiles;
D O I
10.1177/039139889702001105
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The investigation of the flow field downstream of a cardiac valve prosthesis is a well established task. In particular turbulence generation is of interest ii damage to blood costituents is to be assessed. Several prosthetic valve flow studies are available in literature but they generally concern large-sized prostheses. The FDA draft guidance requires the study of the maximum Reynolds number conditions for a cardiac valve model to assess the worst case in turbulence by chosing both the minimum valve diameter and a high cardiac output value as protocol set up. Within the framework of a national research project regarding the characterization of cardiovascular endoprostheses, the Laboratory of Biomedical Engineering is currently conducting an in-depth study of turbulence generated downstream of bileaflet cardiac valves. Four models of 19 mm sized bileaflet valve prostheses namely St Jude Medical HP, Edwards Tekna, Sorin Bicarbon, and CarboMedics, were studied in aortic position. The prostheses were selected for the nominal annulus diameter reported by the manufacturers without any assessment of the valve sizing method The hemodynamic function was investigated using a bidimensional LDA system. Results concern velocity profiles during the peak flow systolic phase, at high cardiac output regime, highlighting the different flow field features downstream of Vie four small-sized cardiac valves.
引用
收藏
页码:622 / 628
页数:7
相关论文
共 11 条
[1]   DETERMINATION OF PRINCIPAL REYNOLDS STRESSES IN PULSATILE FLOWS AFTER ELLIPTIC FILTERING OF DISCRETE VELOCITY-MEASUREMENTS [J].
BALDWIN, JT ;
DEUTSCH, S ;
PETRIE, HL ;
TARBELL, JM .
JOURNAL OF BIOMECHANICAL ENGINEERING-TRANSACTIONS OF THE ASME, 1993, 115 (04) :396-403
[2]   APPROACHING COMPARABILITY AND RESULTS OF PULSATILE FLOW IN-VITRO TESTING OF PROSTHETIC HEART-VALVES [J].
BARBARO, V ;
BOCCANERA, G ;
DANIELE, C ;
GRIGIONI, M ;
PALOMBO, A .
JOURNAL OF MEDICAL ENGINEERING & TECHNOLOGY, 1995, 19 (04) :115-118
[3]   LDA SPECTRAL MEASUREMENTS IN A TURBULENT BOUNDARY-LAYER [J].
CENEDESE, A ;
COSTANTINI, A ;
ROMANO, GP .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 1992, 5 (03) :281-289
[4]   STATISTICAL ERRORS IN MEASUREMENTS ON RANDOM TIME FUNCTIONS [J].
DAVENPORT, WB ;
JOHNSON, RA ;
MIDDLETON, D .
JOURNAL OF APPLIED PHYSICS, 1952, 23 (04) :377-388
[5]  
*FDA, 1994, DRAFT REPL HEART VAL
[6]   Identification of peak stresses in cardiac prostheses - A comparison of two-dimensional versus three-dimensional principal stress analyses [J].
Fontaine, AA ;
Ellis, JT ;
Healy, TM ;
Hopmeyer, J ;
Yoganathan, AP .
ASAIO JOURNAL, 1996, 42 (03) :154-163
[7]   INVITRO FLOW DYNAMICS OF 4 PROSTHETIC AORTIC VALVES - A COMPARATIVE-ANALYSIS [J].
HANLE, DD ;
HARRISON, EC ;
YOGANATHAN, AP ;
ALLEN, DT ;
CORCORAN, WH .
JOURNAL OF BIOMECHANICS, 1989, 22 (6-7) :597-607
[8]   A three-dimensional, time-dependent analysis of flow through a bileaflet mechanical heart valve: Comparison of experimental and numerical results [J].
King, MJ ;
Corden, J ;
David, T ;
Fisher, J .
JOURNAL OF BIOMECHANICS, 1996, 29 (05) :609-618
[9]   THE GEOMETRY OF THE AORTIC ROOT IN HEALTH, AT VALVE DISEASE AND AFTER VALVE-REPLACEMENT [J].
REUL, H ;
VAHLBRUCH, A ;
GIERSIEPEN, M ;
SCHMITZRODE, T ;
HIRTZ, V ;
EFFERT, S .
JOURNAL OF BIOMECHANICS, 1990, 23 (02) :181-&
[10]  
REUL H, 1993, J THORAC CARDIOV SUR, V106, P412